Laboratoire d'astrophysique de Bordeaux, University of Bordeaux, CNRS, Pessac, France.
Laboratoire de Météorologie Dynamique/IPSL, CNRS, Sorbonne Université, École Normale Supérieure, PSL Research University, École Polytechnique, Paris, France.
Nature. 2023 Aug;620(7973):287-291. doi: 10.1038/s41586-023-06258-3. Epub 2023 Aug 9.
Water vapour atmospheres with content equivalent to the Earth's oceans, resulting from impacts or a high insolation, were found to yield a surface magma ocean. This was, however, a consequence of assuming a fully convective structure. Here, we report using a consistent climate model that pure steam atmospheres are commonly shaped by radiative layers, making their thermal structure strongly dependent on the stellar spectrum and internal heat flow. The surface is cooler when an adiabatic profile is not imposed; melting Earth's crust requires an insolation several times higher than today, which will not happen during the main sequence of the Sun. Venus's surface can solidify before the steam atmosphere escapes, which is the opposite of previous works. Around the reddest stars (T < 3,000 K), surface magma oceans cannot form by stellar forcing alone, whatever the water content. These findings affect observable signatures of steam atmospheres and exoplanet mass-radius relationships, drastically changing current constraints on the water content of TRAPPIST-1 planets. Unlike adiabatic structures, radiative-convective profiles are sensitive to opacities. New measurements of poorly constrained high-pressure opacities, in particular far from the HO absorption bands, are thus necessary to refine models of steam atmospheres, which are important stages in terrestrial planet evolution.
研究发现,撞击或高太阳照度会产生相当于地球海洋含量的水蒸气大气,从而形成表面岩浆海洋。然而,这是假设完全对流结构的结果。在这里,我们使用一致的气候模型报告表明,纯蒸汽大气通常由辐射层形成,因此其热结构强烈依赖于恒星光谱和内部热流。在不施加绝热剖面的情况下,表面温度会更低;要使地球地壳熔化,需要比今天高几倍的光照,而这在太阳的主序阶段是不会发生的。金星的表面可能会在蒸汽大气逸出之前凝固,这与之前的工作相反。在最红的恒星(T < 3000 K)周围,无论水含量如何,仅凭恒星的作用力都不能形成表面岩浆海洋。这些发现影响了蒸汽大气的可观测特征和系外行星质量-半径关系,极大地改变了对 TRAPPIST-1 行星含水量的当前限制。与绝热结构不同,辐射-对流剖面对不透明度敏感。因此,需要对远非 HO 吸收带的高气压不透明度进行新的、受限制较小的测量,以改进蒸汽大气模型,这是地球行星演化的重要阶段。